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透明质酸丁酸视黄酸混合酯。一种新型的分化糖缀合物,可在胚胎干细胞中实现高通量的心脏发生。

Butyric and retinoic mixed ester of hyaluronan. A novel differentiating glycoconjugate affording a high throughput of cardiogenesis in embryonic stem cells.

作者信息

Ventura Carlo, Maioli Margherita, Asara Yolande, Santoni Daniela, Scarlata Ignazio, Cantoni Silvia, Perbellini Alberto

机构信息

Laboratory of Molecular Biology and Stem Cell Engineering, National Institute of Biostructures and Biosystems, University of Bologna, I-40138 Bologna, Italy.

出版信息

J Biol Chem. 2004 May 28;279(22):23574-9. doi: 10.1074/jbc.M401869200. Epub 2004 Mar 24.

Abstract

Embryonic stem (ES) cells can differentiate into specialized cells, including cardiac myocytes, but the efficiency is typically low and the process is incompletely understood. Achieving a high throughput of cardiogenesis from pluripotent cells is therefore a major requirement for future approaches in cardiac cell therapy. Here, we developed a novel ester of hyaluronan linked to both butyric and retinoic acid (HBR), coaxing pluripotent ES cells into a cardiogenic decision. In mouse ES cells, HBR remarkably increased the expression of GATA-4 and Nkx-2.5, acting as cardiac lineage-promoting genes in different animal species, including humans. HBR also enhanced prodynorphin gene expression and the synthesis and secretion of dynorphin B, an endorphin playing a major role in ES cell cardiogenesis. These effects occurred at the transcriptional level. HBR also primed the expression of cardiac-specific transcripts and highly enhanced the yield of spontaneously beating ES-derived cardiomyocytes. These results demonstrate the potential for chemically modifying the gene program of cardiac differentiation in ES cells without the aid of gene transfer technologies and may pave the way for novel approaches in tissue engineering and myocardial regeneration.

摘要

胚胎干细胞(ES细胞)能够分化为包括心肌细胞在内的特化细胞,但其效率通常较低,且该过程尚未被完全理解。因此,实现多能细胞高效的心脏发生是未来心脏细胞治疗方法的一项主要要求。在此,我们研发了一种同时连接丁酸和视黄酸的新型透明质酸酯(HBR),可促使多能ES细胞做出心脏发生的决定。在小鼠ES细胞中,HBR显著增加了GATA-4和Nkx-2.5的表达,这两种基因在包括人类在内的不同动物物种中均作为心脏谱系促进基因发挥作用。HBR还增强了强啡肽原基因的表达以及强啡肽B的合成与分泌,强啡肽B是一种在ES细胞心脏发生中起主要作用的内啡肽。这些效应发生在转录水平。HBR还启动了心脏特异性转录本的表达,并显著提高了源自ES细胞的自发搏动心肌细胞的产量。这些结果证明了在不借助基因转移技术的情况下对ES细胞心脏分化基因程序进行化学修饰的潜力,并可能为组织工程和心肌再生的新方法铺平道路。

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